Page 178 - Biofuels Refining and Performance
P. 178

Fuel and Physical Properties of Biodiesel Components  161


           18. R. L. McCormick, M. S. Graboski, T. L. Alleman, and A. M. Herring. Impact of biodiesel
              source material and chemical structure on emissions of criteria pollutants from a
              heavy-duty engine, Environmental Science and Technology 35, 1742–1747, 2001.
           19. G. Knothe, C. A. Sharp, and T. W. Ryan III. Exhaust emissions of biodiesel, petrodiesel,
              neat methyl esters, and alkanes in a new technology engine, Energy & Fuels 20,
              403–408, 2006.
           20. N. Ladommatos, M. Parsi, and A. Knowles. The effect of fuel cetane improver on
              diesel pollutant emissions, Fuel 75, 8–14, 1996.
           21. R. L. Mason, A. C. Matheaus, T. W. Ryan III, R. A. Sobotowski, J. C. Wall, C. H. Hobbs
              et al. EPA HDEWG Program—Statistical Analysis, SAE Technical Paper Series 2001-
              01-1859, In: Diesel and Gasoline Performance and Additives, SAE Publication SP-
              1551, Warrendale, PA, 2001.
           22. A. C. Matheaus, G. D. Neely, T. W. Ryan III, R. A. Sobotowski, J. C. Wall, C. H. Hobbs,
              G. W. Passavant, and T. J. Bond. EPA HDEWG Program—Engine Test Results, SAE
              Technical Paper Series 2001-01-1858, In: Diesel and Gasoline Performance and
              Additives, SAE Publication SP-1551, Warrendale, PA, 2001.
           23. R. A. Sobotowski, J. C. Wall, C. H. Hobbs, A. C. Matheaus, R. L. Mason, T. W. Ryan III,
              et al. EPA HDEWG Program—Test Fuel Development, SAE Technical Paper Series
              2001-01-1857, In: Diesel and Gasoline Performance and Additives, SAE Publication
              SP-1551, Warrendale, PA, 2001.
           24. M. van den Abeele. Palm oil as raw material for the production of a heavy motor fuel
              (L’huile de palme. Matière première pour la préparation d’un carburant lourd utilis-
              able dans les moteurs à combustion interne.), Bulletin Agricole du Congo Belge 33,
              3–90, 1942.
           25. G. Knothe. Historical perspectives on vegetable oil-based diesel fuels, INFORM 12,
              1103–1107, 2001.
           26. K. J. Harrington. Chemical and physical properties of vegetable oil esters and their
              effect on diesel fuel performance, Biomass 9, 1–17, 1986.
           27. Y. Zhang and J. H. Van Gerpen. Combustion Analysis of Esters of Soybean Oil in a
              Diesel Engine, SAE Technical Paper Series 960765, In: Performance of Alternative
              Fuels for SI and CI Engines, SAE Publication SP-1160, Warrendale, PA, pp. 1–15,
              1996.
           28. T. W. Ryan III and B. Stapper. Diesel Fuel Ignition Quality as Determined in a
              Constant Volume Combustion Bomb, SAE Technical Paper Series 870586, 1987.
           29. A. A. Aradi and T. W. Ryan III. Cetane Effect on Diesel Ignition Delay Times Measured
              in a Constant Volume Combustion Apparatus, SAE Technical Paper Series 952352,
              In: Emission Processes and Control Technologies in Diesel Engines, SAE Publication
              SP-1119, Warrendale, PA, pp. 43–56, 1995.
           30. L. N. Allard, G. D. Webster, N. J. Hole, T. W. Ryan III, D. Ott, and C. W. Fairbridge.
              Diesel Fuel Ignition Quality as Determined in the Ignition Quality Tester (IQT), SAE
              Technical Paper Series 961182, 1996.
           31. K. Owen and T. Coley. Automotive Fuels Reference Book, Second ed., Warrendale, PA:
              SAE, 1995.
           32. R. O. Dunn and M. O. Bagby. Low-temperature properties of triglyceride-based diesel
              fuels: Transesterified methyl esters and petroleum middle distillate/ester blends,
              Journal of the American Oil Chemists’ Society 72, 895–904, 1995.
           33. G. Knothe, R. O. Dunn, and M. O. Bagby. Biodiesel: The use of vegetable oils and their
              derivatives as alternative diesel fuels, ACS Symposium Series 666, In: Fuels and
              Chemicals from Biomass, American Chemical Society, Washington, DC, pp. 172–208,
              1997.
           34. G. Knothe, R. O. Dunn, M. W. Shockley, and M. O. Bagby. Synthesis and characteri-
              zation of some long-chain diesters with branched or bulky moieties, Journal of the
              American Oil Chemists’ Society 77, 865–871, 2000.
           35. R. O. Dunn, M. W. Shockley, and M. O. Bagby. Improving the low-temperature prop-
              erties of alternative diesel fuels: Vegetable-oil derived methyl esters, Journal of the
              American Oil Chemists’ Society 73, 1719–1728, 1996.
           36. I. Lee, L. A. Johnson, and E. G. Hammond. Use of branched-chain esters to reduce
              the crystallization temperature of biodiesel, Journal of the American Oil Chemists’
              Society 72, 1155–1160, 1995.
   173   174   175   176   177   178   179   180   181   182   183